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Intermittent

The bare foot completion, which leaves an open hole section below the previous casing, is cheap, simple and suitable for consolidated formations which have little tendency to collapse. The slotted liner s an uncemented section of casing with small intermittent slots cut along its length, which prevents the hole from collapsing, but allows no selectivity of the interval which will be produced. The cased and cemented horizontal completion does allow a choice of which intervals will be perforated and produced. None of these examples provides any effective sand exclusion it this is required a gravel pack or a pre-packed liner can be used. [Pg.229]

Keywords production decline, economic decline, infill drilling, bypassed oil, attic/cellar oil, production potential, coiled tubing, formation damage, cross-flow, side-track, enhanced oil recovery (EOR), steam injection, in-situ combustion, water alternating gas (WAG), debottlenecking, produced water treatment, well intervention, intermittent production, satellite development, host facility, extended reach development, extended reach drilling. [Pg.351]

Krug J T II, Wang G D, Emory S R and Nie S 1999 Efficient Raman enhancement and intermittent light emission observed in single gold nanocrystals J. Am. Chem. Soc. 121 9208-14... [Pg.2510]

Brus L E and Trautman J K 1995 Nanocrystals and nano-optics PM Trans. R. Soc. A 353 313 Nirmal M ef ai 1996 Fluorescence intermittency in single CdSe nanocrystals Nature 383 802... [Pg.2922]

Spray. For most purposes a simple spray device, based on the ordinary scent-spray, suffices. A finer and less intermittent spray can be obtained using the apparatus shown in Fig. 26. A narrow glass cylinder J has a ground-glass... [Pg.52]

Two simple methods for the semi-micro estimation of halogens are available, (a) the Carius method, and (b) the Parr bomb method. It should be emphasised that there are other methods available for these estimations on the true micro scale, but they do not lend themselves, by virtue of the balances, apparatus and manipulation required, to semi-micro work, or to the intermittent usage which class-work necessarily entails. [Pg.502]

Sodamide should never be stored in a stoppered bottle from which samples are to be removed intermittently, since dangerous mixtures may result when the substance is exposed for 2-3 days to even limited amounts of air at the ordinary temperature. As a safe practice, sodamide should be used immediately after preparation, and should not be kept longer than 12-24 hours unless it be under an inert solvent. Even small amounts of unused sodamide should be removed from the apparatus in which it was made by washing with methyl or ethyl alcohol. In all cases where a yellowish or brownish colour develops, due to the formation of oxidation... [Pg.196]

Place 50 g. of anhydrous calcium chloride and 260 g. (323 ml.) of rectified spirit (95 per cent, ethyl alcohol) in a 1-litre narrow neck bottle, and cool the mixture to 8° or below by immersion in ice water. Introduce slowly 125 g. (155 ml.) of freshly distilled acetaldehyde, b.p. 20-22° (Section 111,65) down the sides of the bottle so that it forms a layer on the alcoholic solution. Close the bottle with a tightly fitting cork and shake vigorously for 3-4 minutes a considerable rise in temperature occurs so that the stopper must be held well down to prevent the volatilisation of the acetaldehyde. Allow the stoppered bottle to stand for 24-30 hours with intermittent shaking. (After 1-2 hours the mixture separates into two layers.) Separate the upper layer ca. 320 g.) and wash it three times with 80 ml. portions of water. Dry for several hours over 6 g. of anhydrous potassium carbonate and fractionate with an efficient column (compare Section 11,17). Collect the fraction, b.p. 101-104°, as pure acetal. The yield is 200 g. [Pg.327]

It may be mentioned that diazonium fluoborates containing the nitro group usually decompose suddenly and with violence upon heating, hence if o- or p-fluonitrobenzene are required, the fluoborates (in 10-20 g. quantities) should he mixed with 3-4 times their weight of pure dry sand (or barium sulphate or sodium fluoride) and heated cautiously until decomposition commences intermittent heating will be required to complete the reaction. [Pg.595]

If the reaction becomes too vigorous, it may be necessary to cool the flask by covering it with a damp cloth. Normally the decomposition proceeds smoothly under the intermittent heating. If the salt is damp, the reaction may proceed more vigorously and unless the flask is cooled, it may pass beyond control. [Pg.611]

It is usually better to use a fire extinguisher charged with carbon dioxide under pressure this produces a spray of solid carbon dioxide upon releasing the pressure intermittently and is effective for extinguishing most fires in the laboratory. [Pg.1133]

Array detectors are particularly useful for detecting ions from either a very small amount of a substance or when ionization is not continuous but intermittent. [Pg.409]

The ions in a beam that has been dispersed in space according to their various m/z values can be collected simultaneously by a planar assembly of small electron multipliers. All ions within a specified mass range are detected at the same time, giving the array detector an advantage for analysis of very small quantities of any one substance or where ions are produced intermittently during short time intervals. [Pg.409]

Spark (source) ionization. Occurs when a solid sample is vaporized and partially ionized by an intermittent electric discharge. Further ionization occurs in the discharge when gaseous atoms and small molecular moieties interact with energetic electrons in the intermittent discharge. It is recommended that the word source be dropped from this term. [Pg.439]

Figure 6.5 Schematic illustrations showing the variation of [M-] with time under conditions of continuous illumination (a-c) and intermittent illumination (d-f). The time in darkness is indicated as t. ... Figure 6.5 Schematic illustrations showing the variation of [M-] with time under conditions of continuous illumination (a-c) and intermittent illumination (d-f). The time in darkness is indicated as t. ...
For intermittent illumination with very slow blinking (Rp)slow° ... [Pg.377]

Thus if we were to compare the rate of polymerization with intermittent illumination relative to that with continuous illumination, but under otherwise identical conditions, we would observe the following limits for equal periods of light and dark ... [Pg.377]

Fig. 6. Van der Waals potential energy-distance curve showing regions of operation of contact, noncontact, and intermittent contact or tapping-mode afm... Fig. 6. Van der Waals potential energy-distance curve showing regions of operation of contact, noncontact, and intermittent contact or tapping-mode afm...
Flow Sheet. Most purge-swing appHcations use two fixed-bed adsorbers to provide a continuous flow of feed and product (Fig. 16). Single beds are used when the flow to be treated is intermittent or cycHc. Because the purge flow is invariably greater than that of adsorption, purge is carried out in the down-flow direction to prevent bed lifting, and adsorption is up-flow. [Pg.284]

There are three types of TAP emissions continuous, intermittent, and accidental. Both routine emissions associated with a batch process or a continuous process that is operated only occasionally can be intermittent sources. A dramatic example of an accidental emission was the release of methyl isocyanate [624-83-9] in Bhopal, India. As a result of this accident, the U.S. Congress created Tide III, a free-standing statute included in the Superfund Amendments and Reauthorization Act (SARA) of 1986. Title III provides a mechanism by which the pubHc can be informed of the existence, quantities, and releases of toxic substances, and requires the states to develop plans to respond to accidental releases of these substances. Eurther, it requires anyone releasing specific toxic chemicals above a certain threshold amount to aimuaHy submit a toxic chemical release form to EPA. At present, there are 308 specific chemicals subject to Title III regulation (37). [Pg.374]


See other pages where Intermittent is mentioned: [Pg.368]    [Pg.230]    [Pg.232]    [Pg.232]    [Pg.367]    [Pg.405]    [Pg.1698]    [Pg.47]    [Pg.242]    [Pg.331]    [Pg.68]    [Pg.114]    [Pg.223]    [Pg.289]    [Pg.289]    [Pg.855]    [Pg.1216]    [Pg.199]    [Pg.113]    [Pg.388]    [Pg.376]    [Pg.378]    [Pg.18]    [Pg.274]    [Pg.369]    [Pg.384]   
See also in sourсe #XX -- [ Pg.15 ]

See also in sourсe #XX -- [ Pg.5 , Pg.6 , Pg.17 , Pg.20 , Pg.23 , Pg.34 , Pg.88 , Pg.91 , Pg.92 , Pg.177 ]




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A Cold, Intermittently Wet Mars

Acute intermittent porphyria

Acute intermittent porphyria symptoms

Acute intermittent porphyria treatment

Acute intermittent porphyria, barbiturates precipitating

Asthma intermittent

Ataxia intermittent

Atomic force microscope intermittent contact

Atomic force microscopy intermittent-contact mode

Atomic intermittent contact mode

Bursts, intermittent

Characterization of Intermittent Solids Flow

Charging intermittent

Chronic intermittent hypoxia

Continuous Irregular and Intermittent Boil-off

Continuous and intermittent

Creep intermittent

Design concept intermittent

Disable pin intermittent

Dose to the patient from a multiple intermittent infusion

Drying, intermittent

Example determination of a multiple intermittent infusion dosing regimen for an aminoglycoside antibiotic

Failure intermittent

Fiber Coating and Intermittent Bonding Concept - Experimental Studies

Galvanostatic intermittant titration

Galvanostatic intermittant titration technique

Galvanostatic intermittent titration

Galvanostatic intermittent titration technique

Galvanostatic intermittent titration technique GITT)

Heat Transfer to a Starch Dispersion in an Intermittently Rotated Can

Hepatic acute intermittent

High-pressure intermittent

High-pressure intermittent compression

Hypoxia intermittent

Intermittant addition of reactants

Intermittency

Intermittency index

Intermittency zone

Intermittency, turbulent

Intermittent Contact (Tapping) Mode AFM

Intermittent Contact AFM

Intermittent Crosslinked Gels in a Film Product

Intermittent Pumping and Merging Zones

Intermittent Saltwater Immersion or Spray Exposure

Intermittent Shear Flow of Thermotropic Main-Chain LCPs

Intermittent abdominal pressure ventilator

Intermittent accumulator machine

Intermittent addition

Intermittent agitation, method

Intermittent and Continuous Modes

Intermittent behavior

Intermittent blowdown

Intermittent bonding concept

Intermittent branched-chain ketonuria

Intermittent chaos

Intermittent chlorine injection

Intermittent claudication

Intermittent claudication cilostazol

Intermittent claudication described

Intermittent claudication diagnosis

Intermittent claudication management

Intermittent claudication pentoxifylline

Intermittent claudication prevalence

Intermittent claudication treatment

Intermittent compression molding

Intermittent contact atomic force

Intermittent contact mode

Intermittent contact mode AFM

Intermittent current

Intermittent detonator device

Intermittent dosage

Intermittent drip

Intermittent drug release

Intermittent dryout

Intermittent electric fields

Intermittent explosive disorder

Intermittent exposure

Intermittent extraction

Intermittent extrusion

Intermittent extrusion blow molding

Intermittent fault

Intermittent feeding

Intermittent fever

Intermittent field electrophoresis

Intermittent flows

Intermittent growth

Intermittent growth model

Intermittent heating

Intermittent hemodialysis

Intermittent hydrostatic pressure

Intermittent illumination

Intermittent illumination method

Intermittent interlaminar bond

Intermittent intravenous infusions, multiple

Intermittent introduction of sample

Intermittent kilns

Intermittent load

Intermittent load application

Intermittent loading

Intermittent mandatory ventilation

Intermittent microwave heating

Intermittent microwave irradiation

Intermittent microwave irradiation method

Intermittent microwave-convective

Intermittent microwave-convective drying

Intermittent motion machines

Intermittent obstruction

Intermittent periodic duties

Intermittent pneumatic compression

Intermittent porphyria

Intermittent positive pressure breathing

Intermittent power handling

Intermittent processes

Intermittent pumping

Intermittent radiation

Intermittent stress application

Intermittent ultrasound treatment

Intermittent use

Intermittently Hypoxic Myocardium

Intravenous bolus administration intermittent infusions

Laboratory findings in acute intermittent porphyria

Loads intermittent electrical

Motors intermittent duty

Multiple intermittent infusions

Multiple intermittent infusions concentrations

Nasal intermittent positive pressure

Nasal intermittent positive pressure ventilation

Nightly intermittent peritoneal dialysis

Noise intermittent

Noise intermittent/fluctuating

Noninvasive intermittent positive pressure

Operation intermittent

Patterns intermittent flow

Photoluminescence intermittency

Plastic intermittent behavior

Polymerization spatially intermittent

Pomeau-Manneville intermittency

Potentiostatic intermittent titration

Potentiostatic intermittent titration technique

Potentiostatic intermittent titration technique PITT)

Production intermittent

Reinforcement schedules, intermittent

Reinforcement, intermittent

Renewable energy intermittency

Rotating sector intermittent illumination

Scanning electrochemical microscopy intermittent contact

Self-assembly with intermittent processing

Softener, intermittent

Spatio-temporal intermittency

Spatiotemporal intermittency

Structure functions, multifractality and intermittency

Synchronized intermittent mandatory

Synchronized intermittent mandatory ventilation

Tape, intermittent

The Galvanostatic Intermittent Titration Technique

Tracheostomy intermittent positive pressure

Tracheostomy intermittent positive pressure ventilation

Transient/intermittent faults

Turbulence intermittency

Turbulence intermittent

Ventricular pacing, intermittent

Wall Losses During Intermittent Operation

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